PACS numbers

97.80.−d Binary and multiple stars
  1. A.V. Tutukov, A.M. Cherepashchuk “Evolution of close binary stars: theory and observationsPhys. Usp. 63 209–244 (2020)
    95.85.Sz, 97.60.−s, 97.80.−d (all)
  2. D.V. Bisikalo, A.G. Zhilkin, E.P. Kurbatov “Possible electromagnetic manifestations of merging black holesPhys. Usp. 62 1136–1152 (2019)
    04.30.Tv, 97.10.Gz, 97.80.−d (all)
  3. A.M. Cherepashchuk “Discovery of gravitational waves: a new chapter in black hole studiesPhys. Usp. 59 910–917 (2016)
    04.30.−w, 97.60.Lf, 97.80.−d (all)
  4. V.M. Lipunov “Astrophysical sense of the discovery of gravitational wavesPhys. Usp. 59 918–928 (2016)
    04.30.−w, 95.85.Sz, 97.80.−d (all)
  5. P.V. Baklanov, S.I. Blinnikov et alITEP's achievements in astrophysicsPhys. Usp. 59 796–806 (2016)
    01.65.+g, 97.60.Bw, 97.80.−d (all)
  6. M.R. Gilfanov, R.A. Sunyaev “Radiation-dominated boundary layer between an accretion disc and the surface of a neutron star: theory and observationsPhys. Usp. 57 377–388 (2014)
    97.10.Gz, 97.60.Jd, 97.80.−d (all)
  7. A.G. Zhilkin, D.V. Bisikalo, A.A. Boyarchuk “Flow structure in magnetic close binary starsPhys. Usp. 55 115–136 (2012)
    52.30.−q, 97.10.Gz, 97.80.−d (all)
  8. A.M. Cherepashchuk “Optical investigations of X-ray binary systemsPhys. Usp. 54 1061–1067 (2011)
    97.60.Jd, 97.60.Lf, 97.80.−d (all)
  9. Astrophysics and astronomy (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 26 January 2011)Phys. Usp. 54 1061–1084 (2011)
    01.10.Fv, 04.20.−q, 11.27.+d, 89.60.Gg, 96.30.Cw, 96.30.Ys, 97.60.Jd, 97.60.Lf, 97.80.−d, 97.82.−j, 98.62.Sb, 98.80.Es (all)
  10. V.S. Imshennik “Rotational explosion mechanism for collapsing supernovae and the two-stage neutrino signal from supernova 1987A in the Large Magellanic CloudPhys. Usp. 53 1081–1092 (2010)
    95.85.Sz, 97.60.Bw, 97.80.−d (all)
  11. A.M. Fridman, D.V. Bisikalo “The nature of accretion disks of close binary stars: overreflection instability and developed turbulencePhys. Usp. 51 551–576 (2008)
    47.27.−i, 97.10.Gz, 97.80.−d (all)
  12. S.B. Popov, M.E. Prokhorov “Population synthesis in astrophysicsPhys. Usp. 50 1123–1146 (2007)
    97.10.−q, 97.60.Jd, 97.80.−d (all)
  13. S.N. Fabrika, P.K. Abolmasov et alUltraluminous X-ray sources in galaxies — microquasars or intermediate mass black holesPhys. Usp. 49 324–329 (2006)
    01.10.Fv, 97.80.−d, 98.70.−f, 98.70.Qy (all)
  14. G.S. Bisnovatyi-Kogan “Binary and recycled pulsars: 30 years after observational discoveryPhys. Usp. 49 53–67 (2006)
    04.30.Db, 04.80.Cc, 97.60.Gb, 97.80.−d (all)
  15. A.A. Pomeranskii, R.A. Sen’kov, I.B. Khriplovich “Spinning relativistic particles in external fieldsPhys. Usp. 43 1055–1066 (2000)
    03.65.Pm, 12.20.−m, 04.25.Nx, 97.80.−d (all)
  16. A.M. Cherepashchuk “Masses of black holes in binary stellar systemsPhys. Usp. 39 759–780 (1996)
    97.60.Lf, 97.80.−d (all)
  17. V.I. Dokuchaev “Birth and life of massive black holesSov. Phys. Usp. 34 (6) 447–470 (1991)
    98.62.Js, 98.54.Cm, 98.54.Aj, 97.80.−d, 97.10.Bt, 97.10.Cv (all)
  18. I.D. Novikov “Electrodynamics of black holes and its astrophysical applicationsSov. Phys. Usp. 27 644–645 (1984)
    97.60.Lf, 98.62.Js, 98.54.Aj, 97.10.Kc, 97.80.−d (all)
  19. V.B. Braginskii “Gravitational radiation and the prospect of its experimental discoverySov. Phys. Usp. 8 513–521 (1966)
    04.80.Nn, 95.55.Ym, 95.30.Sf, 97.80.−d (all)
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